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花瓣图案的演变:微观层面上绽放的花卉多样性。

Evolution of petal patterning: blooming floral diversity at the microscale.

作者信息

Doody Erin, Moyroud Edwige

机构信息

Sainsbury Laboratory Cambridge University, Cambridge, CB2 1LR, UK.

Department of Genetics, University of Cambridge, Downing Street, Cambridge, CB2 3EH, UK.

出版信息

New Phytol. 2025 Sep;247(6):2538-2556. doi: 10.1111/nph.70370. Epub 2025 Jul 8.

Abstract

The flowers of angiosperms are extraordinarily diverse. While most floral variation is visible to the naked eye, this diversity goes beyond the macroscale: Floral organs comprise an underappreciated range of cell types that generate a multitude of patterns across their surfaces and give rise to novel structures. Because diverse cell patterns provide adaptations to biotic and abiotic factors, they also contribute to angiosperm evolution and speciation. Yet, how such diversity originates remains to be understood. In this review, we focus on petals, which together form the corolla, to examine the mechanisms patterning floral surfaces at the cellular level. We summarize current research aiming to understand how cell fate specification and controlled cell growth (proliferation and expansion) are achieved with high spatial resolution during petal development. We also examine the adaptive potential for such patterns and how they contribute to plant fitness and diversification. Finally, we discuss promising directions for future research on the evolution of petal patterning at the microscale and identify outstanding questions that technological advances now make it possible to address.

摘要

被子植物的花极其多样。虽然大多数花的变异肉眼可见,但这种多样性超出了宏观层面:花器官包含一系列未得到充分认识的细胞类型,这些细胞类型在其表面形成了多种多样的模式,并产生了新的结构。由于多样的细胞模式为生物和非生物因素提供了适应性,它们也促进了被子植物的进化和物种形成。然而,这种多样性是如何产生的仍有待了解。在这篇综述中,我们聚焦于共同构成花冠的花瓣,以在细胞水平上研究花表面模式形成的机制。我们总结了当前旨在了解花瓣发育过程中如何以高空间分辨率实现细胞命运特化和受控细胞生长(增殖和扩展)的研究。我们还研究了这些模式的适应潜力以及它们如何促进植物的适应性和多样化。最后,我们讨论了未来在微观尺度上花瓣模式形成进化研究的有前景的方向,并确定了技术进步现在使得能够解决的突出问题。

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